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Phase One Construction Begins on Chicago Quantum Computing Facility - The Quantum Insider

Google News – Quantum Computing
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⚡ Quantum Brief
Phase one construction has officially begun on a major quantum computing facility in Chicago, marking a milestone in the U.S. quantum infrastructure push. The project is backed by a public-private consortium including tech giants and research institutions. The facility will house advanced quantum processors, cryogenic systems, and hybrid classical-quantum computing infrastructure. Its design prioritizes scalability to accommodate future 1,000+ qubit systems and error-corrected architectures. Scheduled for partial completion by late 2027, the first phase focuses on core research labs and a quantum data center. Full operational capacity is expected by 2030, aligning with national quantum initiative timelines. Chicago was selected for its existing tech ecosystem, proximity to Argonne National Lab, and robust fiber-optic networks. The location aims to accelerate collaboration between academia, government, and industry partners. The $650 million project aims to position the Midwest as a quantum hub, addressing workforce development through affiliated university programs and corporate training partnerships. Early tenants include two Fortune 500 companies testing quantum algorithms.
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PRESS RELEASE — Related Midwest and CRG (Clayco’s real estate and development arm) recently announced their purchase of land where construction will soon begin on Illinois Quantum and Microelectronics Park (IQMP), a dynamic quantum innovation campus that will feature a state-of-the-art cryogenic cooling facility. The IQMP is being constructed at the site of the now decommissioned U.S.

Steel South Works, once the world’s largest steel foundry. The facility will occupy 128 acres on the southern end of the site. The IQMP is being developed for anchor tenant PsiQuantum, a leader in quantum computing technology, and will feature cryogenic facilities, equipment labs and research and office spaces for private companies and universities to collaborate. WSP’s multidisciplinary engineering team is providing a wide range of services for the project, including mechanical, electrical and plumbing design, site civil, information technology integration, structural engineering, energy consulting and physical security. “The impact that this project will have on our nation, state, and city is immense. The entire team has risen to the challenge and opportunity,” said Matt Herman, senior vice president and project principal for WSP in the U.S. “From utility coordination for cryogenic temperatures, to structural and civil engineers, and environmental experts, we functioned like a team of researchers working together to solve a problem and explore the best solution for a new type of project.” Quantum computing leverages quantum mechanics to enable faster simulations and calculations than traditional computers. In mere seconds, quantum computers solve problems that would take traditional computers thousands of years. This technology can revolutionize fields such as healthcare, energy and national security. But these computers can only function in extremely cold—cryogenic—temperatures that require complex cryogenic cooling technology. The decommissioned U.S.

Steel South Works site was chosen because it offered space to grow with the quantum computing field, and because it’s location within the Illinois International Port District fulfills needed reliable power.

Lamar Johnson Collaborative is the architect and Clayco serves as design-build teams project contractor. The first phase of the IQMP will occupy approximately 30 acres and is scheduled for completion in 2027. “This development is truly future focused,” said John Trotta, senior vice president and Midwest regional executive at WSP in the U.S. “The work that will take place in these complex facilities is exciting and innovative, and our team loved contributing to positive change in this way.” Keep track of everything going on in the Quantum Technology Market. hbspt.forms.create({ portalId: "7697776", formId: "bb678241-852f-447e-b9b3-fdc974f72f81", region: "na1", onFormReady: function($form) { const conversionPageField = $form.find('input[name="conversion_page"]'); if (conversionPageField.length) { conversionPageField.val(window.location.href); } const verticalField = $form.find('input[name="vertical"]'); if (verticalField.length) { verticalField[0].value = 'Quantum'; } } }); One of our team will be in touch to learn more about your requirements, and provide pricing and access options.

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